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首页> 外文期刊>American journal of analytical chemistry >Modeling of Fixed Bed Adsorption Column Parameters of Iron(II)Removal Using Ferrihydrite Coated Brick
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Modeling of Fixed Bed Adsorption Column Parameters of Iron(II)Removal Using Ferrihydrite Coated Brick

机译:铁水体涂层砖脱铁(II)固定床吸附柱参数建模

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Fixed-bed operating experimental column conditions were studied to evaluate the performance of brick from Bangui Region(in Central African Republic),coated with iron oxyhydroxide(ferrihydrite)for the removal of iron(II)from aqueous solution.The prediction of theoretical breakthrough profiles using Bohart and Adams sorption model was employed to achieve characteristic parameters such as depth of exchange zone,time required for exchange zone to move vertically,moving rate for the exchange zone and adsorption capacity useful for fixed-bed column reactor was investigated under varying operating conditions.The effects of bed depth and flow rate on iron(II)adsorption were studied.Our finding revealed that the Brick from Bangui Region(in Central African Republic),coated with ferrihydrite was a very efficient media for the removal of Fe(II)ions from water.The experimental data showed that the depth and the moving rate(10.3 ± 0.6 cm)and(0.208 ± 0.006 cm/min)respectively of the exchange zone(adsorption zone)were independent of variability of the height of the adsorbent bed column,however the variations of the flow rate affect the moving rate of the exchange zone.The bed depth service time(BDST)model was used and permitted us to predict the service times of columns operated at various flow rates and bed depths and these predicted values were compared with the experimental values.
机译:研究了中非共和国班吉地区涂覆氢氧化铁(亚铁水合物)的砖在水溶液中去除铁(II)的性能。采用Bohart和Adams吸附模型对理论突破剖面的预测,研究了不同操作条件下交换区深度、交换区垂直移动所需时间、交换区移动速率和固定床柱反应器吸附能力等特征参数。研究了床层深度和流速对铁(II)吸附的影响。我们的研究结果表明,来自班吉地区(中非共和国)的砖,涂有铁水合体,是一种非常有效的去除水中Fe(II)离子的介质。实验数据表明,交换区(吸附区)的深度和移动速率(10.3 ± 0.6 cm)和(0.208 ± 0.006 cm/min)与吸附床柱高度的变化无关,但流速的变化会影响交换区的移动速率。采用床深服务时间(BDST)模型,预测不同流速和床深下色谱柱的服务时间,并将这些预测值与实验值进行比较。

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